Wearable Sweat Rate Sensors for Human Thermal Comfort Monitoring

Носимые датчики скорости потоотделения для мониторинга теплового комфорта человека
Jai Kyoung Sim, Sunghyun Yoon, Young-Ho Cho
2018-01-15

human sweat ratenatural ventilationthermal comfort monitoringthermo-pneumatic actuatorswearable sweat rate sensors
Abstract We propose watch-type sweat rate sensors capable of automatic natural ventilation by integrating miniaturized thermo-pneumatic actuators, and experimentally verify their performances and applicability. Previous sensors using natural ventilation require manual ventilation process or high-power bulky thermo-pneumatic actuators to lift sweat rate detection chambers above skin for continuous measurement. The proposed watch-type sweat rate sensors reduce operation power by minimizing expansion fluid volume to 0.4 ml through heat circuit modeling. The proposed sensors reduce operation power to 12.8% and weight to 47.6% compared to previous portable sensors, operating for 4 hours at 6 V batteries. Human experiment for thermal comfort monitoring is performed by using the proposed sensors having sensitivity of 0.039 (pF/s)/(g/m 2 h) and linearity of 97.9% in human sweat rate range. Average sweat rate difference for each thermal status measured in three subjects shows (32.06 ± 27.19) g/m 2 h in thermal statuses including ‘comfortable’, ‘slightly warm’, ‘warm’, and ‘hot’. The proposed sensors thereby can discriminate and compare four stages of thermal status. Sweat rate measurement error of the proposed sensors is less than 10% under air velocity of 1.5 m/s corresponding to human walking speed. The proposed sensors are applicable for wearable and portable use, having potentials for daily thermal comfort monitoring applications.
1
Heat-circuit modeling reduces the expansion-fluid volume to 0.4 ml, lowering operation power to 12.8% and weight to 47.6% of previous portable sensors.
2
Human experiments showed that the sensors can discriminate four thermal-status stages—comfortable, slightly warm, warm, and hot—with an average sweat-rate difference of (32.06 ± 27.19) g/m² h.
3
In the human sweat-rate range, the sensors achieve sensitivity of 0.039 (pF/s)/(g/m² h) and 97.9% linearity.
4
Measurement error remains below 10% at 1.5 m/s air velocity, corresponding approximately to human walking speed.
5
The sensors operate for 4 hours using 6 V batteries, supporting practical portable and wearable applications.
6
Watch-type sweat-rate sensors integrate miniaturized thermo-pneumatic actuators to provide automatic natural ventilation for continuous wearable monitoring.

Wearable watch-type sweat rate sensors for human thermal comfort monitoring

Sensor performance and the discrimination of four human thermal-status stages based on sweat-rate measurement under natural ventilation

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2018-01-15
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Jai Kyoung Sim
Sunghyun Yoon
Young-Ho Cho
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